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胰凝乳蛋白酶与抑肽酶C相互作用的动力学

Kinetics of the interaction of chymotrypsin with eglin c.

作者信息

Faller B, Bieth J G

机构信息

INSERM U 237, Université Louis Pasteur de Strasbourg, Illkirch, France.

出版信息

Biochem J. 1991 Nov 15;280 ( Pt 1)(Pt 1):27-32. doi: 10.1042/bj2800027.

Abstract

The kinetics of binding of recombinant eglin c to bovine pancreatic chymotrypsin was studied by conventional and stopped-flow techniques. With nanomolar enzyme and inhibitor concentrations, the inhibition was fast and pseudo-irreversible (k(assoc.) = 4 x 10(6) m-1.s-1 at 7.4 and 25 degrees C). Reaction of the enzyme-inhibitor complex with alpha 1-proteinase inhibitor, an irreversible chymotrypsin ligand, resulted in a slow release of free eglin c, which was monitored by electrophoresis (k(dissoc.) approximately 1.6 x 10(-6) s-1, t1/2 approximately 5 days). The proflavin displacement method and a stopped-flow apparatus were used to monitor the association of chymotrypsin with eglin c under a wide range of inhibitor concentration and under pseudo-first-order conditions. At pH 7.4 and 25 degrees C or 5 degrees C, or at pH 5.0 and 25 degrees C, the pseudo-first-order rate constant of proflavin displacement increased linearly with eglin c up to the highest concentration tested, suggesting a one-step bimolecular association reaction: E + I in equilibrium with EI. However, kassoc. is much lower than the rate constant for a bimolecular reaction and its activation energy (66 kJ.mol-1 at pH 7.4 and 78 kJ.mol-1 at pH 5.0) is far too high for a diffusion-controlled step. The enzyme-inhibitor association may therefore occur via a loose pre-equilibrium complex EI* (Ki* much greater than 5 x 10(-4) M) that rapidly isomerizes (k2 much greater than 2 x 10(3) s-1) into an extremely stable final complex (Ki approximately 4 x 10(-13) M). Unlike other proteinase-inhibitor systems, the chymotrypsin-eglin association is virtually pH-independent.

摘要

采用传统技术和停流技术研究了重组水蛭素c与牛胰凝乳蛋白酶的结合动力学。在纳摩尔级的酶和抑制剂浓度下,抑制作用迅速且近乎不可逆(在7.4℃和25℃时,k(缔合)=4×10(6) m-1·s-1)。酶-抑制剂复合物与α1-蛋白酶抑制剂(一种不可逆的胰凝乳蛋白酶配体)反应,导致游离水蛭素c缓慢释放,通过电泳监测(k(解离)约为1.6×10(-6) s-1,t1/2约为5天)。在广泛的抑制剂浓度和准一级条件下,使用原黄素置换法和停流装置监测胰凝乳蛋白酶与水蛭素c的缔合。在pH 7.4和25℃或5℃,或pH 5.0和25℃时,原黄素置换的准一级速率常数随水蛭素c线性增加,直至测试的最高浓度,表明是一步双分子缔合反应:E+I⇌EI。然而,k(缔合)远低于双分子反应的速率常数,其活化能(在pH 7.4时为66 kJ·mol-1,在pH 5.0时为78 kJ·mol-1)对于扩散控制步骤来说过高。因此,酶-抑制剂缔合可能通过一个松散的预平衡复合物EI*(Ki*远大于5×10(-4) M)发生,该复合物迅速异构化(k2远大于2×10(3) s-1)形成一个极其稳定的最终复合物(Ki约为4×10(-13) M)。与其他蛋白酶-抑制剂系统不同,胰凝乳蛋白酶-水蛭素的缔合实际上与pH无关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/77be/1130594/6382e5b74b86/biochemj00147-0036-a.jpg

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